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DNS Study of the Bending Effect Due to Smoothing Mechanism

Propagation of either an infinitely thin interface or a reaction wave of a nonzero thickness in forced, constant-density, statistically stationary, homogeneous, isotropic turbulence is simulated by solving unsteady 3D Navier⁻Stokes equations and either a level set (G) or a reaction-diffusion equation, respectively, with all other things being equal. In the case of the interface...

Premixed Turbulent Flames

November 2011 Copyright © 2011 Andrei N. Lipatnikov et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and ... biofuel canola methyl ester (CME). The paper reports measured data on the influence of turbulence on emissions from partially premixed flames of blends of CME and a Diesel fuel. Andrei N. Lipatnikov Alexey

Premixed Turbulent Flames

November 2011 Copyright © 2011 Andrei N. Lipatnikov et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and ... biofuel canola methyl ester (CME). The paper reports measured data on the influence of turbulence on emissions from partially premixed flames of blends of CME and a Diesel fuel. Andrei N. Lipatnikov Alexey

Premixed Turbulent Flames

November 2011 Copyright © 2011 Andrei N. Lipatnikov et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and ... biofuel canola methyl ester (CME). The paper reports measured data on the influence of turbulence on emissions from partially premixed flames of blends of CME and a Diesel fuel. Andrei N. Lipatnikov Alexey

Premixed Turbulent Flames

November 2011 Copyright © 2011 Andrei N. Lipatnikov et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and ... Andrei N. Lipatnikov,1 Alexey A. Burluka,2 Tatsuya Hasegawa,3 and Vladimir A. Sabel'nikov4 1Department of Applied Mechanics, Chalmers University of Technology, 41296 Gothenburg, Sweden 2School of

Statistics of Conditional Fluid Velocity in the Corrugated Flamelets Regime of Turbulent Premixed Combustion: A Direct Numerical Simulation Study

, Sweden Received 13 February 2011; Revised 23 April 2011; Accepted 8 June 2011 Academic Editor: Vladimir A. Sabel Copyright © 2011 Nilanjan Chakraborty and Andrei N. Lipatnikov. This is an open access

Statistics of Conditional Fluid Velocity in the Corrugated Flamelets Regime of Turbulent Premixed Combustion: A Direct Numerical Simulation Study

Nilanjan Chakraborty 0 Andrei N. Lipatnikov 1 Vladimir A. Sabel 0 School of Mechanical and System Engineering, Newcastle University , Claremont Road, Newcastle-upon-tyne NE1 7RU , UK 1 Department of Applied

Statistics of Conditional Fluid Velocity in the Corrugated Flamelets Regime of Turbulent Premixed Combustion: A Direct Numerical Simulation Study

, Sweden Received 13 February 2011; Revised 23 April 2011; Accepted 8 June 2011 Academic Editor: Vladimir A. Sabel Copyright © 2011 Nilanjan Chakraborty and Andrei N. Lipatnikov. This is an open access

Statistics of Conditional Fluid Velocity in the Corrugated Flamelets Regime of Turbulent Premixed Combustion: A Direct Numerical Simulation Study

Nilanjan Chakraborty 0 Andrei N. Lipatnikov 1 Vladimir A. Sabel 0 School of Mechanical and System Engineering, Newcastle University , Claremont Road, Newcastle-upon-tyne NE1 7RU , UK 1 Department of Applied